...
首页> 外文期刊>Journal of Materials Science >Size effects in lattice-structured cellular materials: edge softening effects
【24h】

Size effects in lattice-structured cellular materials: edge softening effects

机译:晶格结构细胞材料中的尺寸效果:边缘软化效果

获取原文
获取原文并翻译 | 示例

摘要

Cellular materials possess size-dependent mechanical behavior. This work examines the causes of these size effects in periodic thin-walled cellular materials, modeled as a network of beam elements. The literature has attributed stiffening size effects to the local beam bending behavior of these materials; there is an additional stiffness connected to the rotation of the beam nodes at lattice vertices that causes a stiffening size effect. This work decomposes the strain energy of the beams in the lattice into energy from axial stretching and beam bending and shows that size effects are connected to bending strain energy in certain situations. Other literature has shown a softening size effect in stochastic foams caused by damaged or incomplete cells on free surfaces. This work uses a strain map of the lattice model along with the micropolar constitutive law to show that these edge softening effects can appear in periodic cellular materials when surface cells are neither damaged nor incomplete. This edge softening effect is due to the truncation of repeated unit cells found in the interior of the body. This effect is only observed for certain lattice topologies and is quantified and connected to a global size effect. In conjunction with the beam bending size effect, this edge effect is able to explain the origin of size effects for a variety of lattice topologies and boundary conditions.
机译:细胞材料具有尺寸依赖性的机械行为。这项工作检查了定期薄壁蜂窝材料中这些尺寸效应的原因,被建模为梁元件网络。文献对这些材料的局部光束弯曲行为归因于加强尺寸效应;存在额外的刚度,该刚度连接到晶格顶部的梁节点的旋转,该晶格顶点导致加强尺寸效应。这项工作将晶格中梁的应变能与轴向拉伸和梁弯曲分解成能量,并表示尺寸效应在某些情况下连接到弯曲应变能。其他文献已经显示出在自由表面上受损或不完全损坏或不完全的随机泡沫中的软化尺寸效应。这项工作使用格子模型的应变映射以及微波利卡本构术定律,表明当表面细胞既损坏也没有不完整时,这些边缘软化效果可以在周期性细胞材料中出现。这种边缘软化效果是由于体内内部发现的重复单元细胞的截短。仅针对某些晶格拓扑观察到这种效果,并被量化并连接到全局尺寸效应。结合光束弯曲尺寸效果,该边缘效应能够解释各种晶格拓扑和边界条件的尺寸效应的起源。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号